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Persistent Identifier
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perma:LIST.HG6GZB |
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Publication Date
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2025-12-09 |
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Title
| Indo-French high-resolution thermal infrared space mission for earth natural resources assessment and monitoring - Concept and definition of TRISHNA [* Cross-Reference *] |
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Other Identifier
| https://doi.org/10.5194/isprs-archives-XLII-3-W6-403-2019 |
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Author
| Lagouarde, J. P. (Interaction Sol Plante Atmosphère)
Bhattacharya, Bimal K. (Space Applications Centre)
Crébassol, P. (CNES Centre National d'Etudes Spatiales)
Gamet, P. (CNES Centre National d'Etudes Spatiales)
Adlakha, Dheeraj (Space Applications Centre)
Murthy, C. S. (National Remote Sensing Centre India)
Singh, S. K. (Space Applications Centre)
Mishra, Manoj (Space Applications Centre)
Nigam, Rahul (Space Applications Centre)
Raju, P. V. (National Remote Sensing Centre India)
Babu, S. S. (Indian Space Research Organisation)
Shukla, M. V. (Space Applications Centre)
Pandya, M. R. (Space Applications Centre)
Boulet, G. (Center for Space Studies of the Biosphere)
Briottet, X. (ONERA Office National d'Etudes et Recherches Aerospatiales)
Dadou, I. (Laboratoire d'Etudes en Géophysique et Océanographie Spatiales)
Dedieu, G.
Gouhier, M. (Université Clermont Auvergne)
Hagolle, O.
Irvine, M. (Interaction Sol Plante Atmosphère)
Jacob, F. (Laboratoire d'Etude des interactions sol - Agroecosysteme - Hydrosysteme (LISAH))
Kumar, K. K. (Indian Space Research Organisation)
Laignel, B. (Université de Rouen Normandie)
Maisongrande, P. (CNES Centre National d'Etudes Spatiales)
Mallick, K. (Luxembourg Institute of Science and Technology)
Olioso, A. (Environnement Méditerranéen et Modélisation des Agro-Hydrosystèmes - (EMMAH))
Ottlé, C. (Laboratoire des Sciences du Climat et de l'Environnement)
Roujean, J. L. (Université de Toulouse)
Sobrino, J. (Universitat de València)
Ramakrishnan, R. (Space Applications Centre)
Sekhar, M. (Indian Institute of Science)
Sarkar, S. S. (Space Applications Centre) |
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Point of Contact
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LIST RDS (LIST) |
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Description
| The Indian and French Space Agencies, ISRO and CNES, have conceptualized a space-borne Thermal Infrared Reflectance (TIR) mission, TRISHNA (Thermal infRared Imaging Satellite for High-resolution Natural Resource Assessment). The primary design drivers of TRISHNA are the monitoring of (i) terrestrial water stress and use, and of (ii) coastal and continental water. A suit of four TIR bands and six optical bands is planned. The TIR bands will be centred at 8.6μm, 9.1μm, 10.3μm and 11.5μm to provide noon-night global observations at 57m nadir resolution over land and coastal regions. The field of view (FOV) is r34q and the orbit of 761 km altitude was designed to allow 3 sub-cycle acquisitions during the 8- day cycle. The optical bands correspond to blue, green, red, and NIR plus two SWIR bands at 1.38μm and 1.61μm. The green, red, NIR and the 1.61μm SWIR bands will have better radiometry quality than those of AWiFS. ISRO and CNES will develop optical and TIR payloads, respectively. Assessing evapotranspiration and furthermore Gross and Net Primary Productivity (GPP and NPP) will in turn assist in quantifying water use in rainfed and irrigated agriculture, water stress and water use efficiency, with expected applications to agricultural drought and early warning, crop yield prediction, water allocation, implementation of water rights, crop insurance business and agro-advisories to farmers. The other scientific objectives of TRISHNA are also briefly described. TRISHNA instrument will fly aboard a ISRO spacecraft scheduled to be launched from 2024 for a minimum period of 5 years' mission lifetime. (2019-02-18)
***This entry has been automatically imported via Infodoc(ASO) CSV by LIST harvest scripts. Please refer to https://doi.org/10.5194/isprs-archives-XLII-3-W6-403-2019 for the original and latest version of the dataset and data downloads*** (2025-12-04) |
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Subject
| Other |
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Keyword
| Global monitoring
Surface energy balance
TIR remote sensing
TRISHNA mission |
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Deposit Date
| 2019-02-18 |
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Data Type
| Conference Paper |